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NF-κB inhibitor reverses temozolomide resistance in human glioma TR/U251 cells

机译:NF-κB抑制剂逆转人胶质瘤TR / U251细胞的替莫唑胺耐药性

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摘要

Glioblastoma multiforme (GBM) demonstrates an unsatisfactory clinical prognosis due to the intrinsic or acquired resistance to temozolomide (TMZ) exhibited by the tumors. One possible cause of TMZ resistance in GBM is the overexpression of O6-methylguanine-DNA methyltransferase (MGMT), which can repair the TMZ-induced guanine damage in DNA. Additionally, excessive activated NF-κB is reported to be a component of the major inflammatory transcription pathway that is associated with TMZ resistance in GBM. However, the association between the NF-κB pathway and MGMT expression in GBM cells is unknown. Therefore, in the present study, the TMZ resistant (TR) U251 cell line (TR/U251) was successfully constructed to detect how the TR/U251 cell line and the parental U251 cell line each interact with TMZ in vitro. The TR/U251 cells were approximately five times more resistant to TMZ compared with the parental cells. Furthermore, it was found that the NF-κB inhibitor BAY 11-7082 suppressed the expression of MGMT in TR/U251 cells and enhanced TMZ-induced cytotoxicity and apoptosis, thereby indicating that the NF-κB pathway and MGMT interact to promote TMZ resistance. The inhibition of NF-κB may be a promising strategy to reverse drug resistance in TR glioma cells. The present results propose a potential mechanism for using the NF-κB inhibitor BAY 11-7082 as a potential therapy for the treatment of TR glioma. Although BAY 11-7082 is a well-known NF-κB inhibitor, the present study further investigated its underlying mechanisms through a series of new experiments.
机译:多形性胶质母细胞瘤(GBM)由于肿瘤表现出对替莫唑胺(TMZ)的内在或获得性耐药,因此临床预后不理想。 GBM中TMZ抗性的一种可能原因是O 6 -甲基鸟嘌呤-DNA甲基转移酶(MGMT)的过表达,它可以修复TMZ诱导的鸟嘌呤对DNA的损伤。另外,据报道过量活化的NF-κB是与GBM中TMZ抗性有关的主要炎症转录途径的组成部分。然而,尚不清楚GBM细胞中NF-κB途径与MGMT表达之间的关联。因此,在本研究中,成功​​构建了TMZ抗性(TR)U251细胞系(TR / U251),以检测TR / U251细胞系和亲本U251细胞系如何在体外与TMZ相互作用。与亲代细胞相比,TR / U251细胞对TMZ的抵抗力大约高五倍。此外,发现NF-κB抑制剂BAY 11-7082抑制TR / U251细胞中MGMT的表达并增强TMZ诱导的细胞毒性和凋亡,从而表明NF-κB途径和MGMT相互作用以促进TMZ抗性。抑制NF-κB可能是逆转TR胶质瘤细胞耐药性的一种有前途的策略。本结果提出了使用NF-κB抑制剂BAY 11-7082作为治疗TR神经胶质瘤的潜在疗法的潜在机制。尽管BAY 11-7082是一种众所周知的NF-κB抑制剂,但本研究通过一系列新实验进一步研究了其潜在机制。

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